HomeMy WebLinkAboutFloodplain AnalysisFLOODPLAIN ANALYSIS
FOR
SHENANDOAH
PHASES 10-17 PRELIMINARY PLAT
F-1
i
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J~r~ 3
v v
Boman Road ~
` SoutMm Pwneomm W y
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Location Map
NTS
65923
APRIL, 2004 sj~~~~
Prepared By:
McClure Engineering, Inc.
1008 Woodcreek Drive, Suite 103
College Station, Texas 77845
(979) 693-3838
TABLE OF CONTENTS
FLOODPLAIN ANALYSIS FOR
SHENANDOAH PHASES 10-17 MASTER PRELIMINARY PLAT
INTRODUCTION and METHODOLOGY 1
EXHIBITS
DRAINAGE AREA MAP "A"
HEC-1 HYDROLOGIC ANALYSIS "B"
DRAINAGE AREA PARAMETERS "C"
HEC-RAS DATA
HEC-RAS OUTPUT "E"
FLOODWAY & FLOODPLAIN EXHIBIT " F"
HEC-RAS FLOODWAY ANALYSIS (TABULAR) "G"
Floodplain and Floodway Analysis
for the
North Fork of Spring Creek,
College Station, Texas
Prepared in conjunction with the Preliminary Plat for
Shenandoah Subdivision, Phases 11-17
Introduction
The Shenandoah Subdivision is located on the south side of Barron Road in southern College
Station. Phases 1 through 9 of the subdivision have either been completed or are nearing completion, and
Phase 10 is a reserve tract near SH 6 that is being considered for development in the near future. The
developer of this subdivision recently purchased additional property to the west of those existing phases
and is beginning preparations for development of this land. This area will be considered Phases 11-17 of
the subdivision.
The main drainage facility for this property is the North Fork of Spring Creek. This creek is part
of the Primary Drainage System as shown in the College Station Drainage Policy and Design Standards.
It is also a federally regulated stream where FEMA has established floodplain and floodway maps for the
segment that passes through developed property downstream of the site. The City of College Station's
development policy is to require each developer to extend this mapping through their property.
Therefore, this report was prepared to present results of the computer modeling and mapping for the
North Fork of Spring Creek through the Shenandoah property.
Methodology and Results
The initial step in the floodplain analysis was the preparation of a HEC-1 hydrologic model that
computed the design flowrates for the drainage basin. Field survey data was collected through the
Shenandoah property and on the properties immediately upstream and downstream of the site. Aerial
mapping from the City of College Station was used to supplement the survey data on other portions of the
stream. Flowrates for the 500, 100, 50, 25, and 10-year design storms were prepared under existing,
proposed and ultimate development conditions. Results of this model are shown in Exhibit B.
For purposes of analyzing the 100-year floodplain, flowrates from the Existing Conditions model
was selected for use in subsequent models. The Existing Conditions model was chosen over the Proposed
1
Scale; 1" = 100'
/ _ Lambsb' Ln 12 l
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Halifax Drive_ F~71 _6w -6w 6wL= _67~1
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In i I I , 12 I 14
/ 2 I I 112 f I I / I I ~~ti Im IC . m ` _6SL
16 o al / / / I. r ~ I ~ m ~ ,2a2
/ IZ / c. ~I I I ~1 4
o -
3 I I /11 c 1 ~i I I I pp X286
\ I 1 15 / I , / I I I II / I I 1511
_ / l ► 98041
4 6
4 j I 10 m I Z I ~7
14/ -_41
1 f II m 1
I I \ \ _ /r
0 I I 14 1 /L
13- -•-8 S L- ~c-6 S L r
- - - - - I / - F
8
12
2s ~N erve Tract I
l 2 Residential R~ Tract -
1 } 11 CA 9.41 Act 0)
1 \ \ ` 1 \ N Zoned A- II
/ ry
10
286- - l ~ ~ (fir ) / t/ ~ J m
/ - _ - _ -rte 1 tl
30' P.U.E.
2rA -=sisL1`==sJ'~ =-=zrs:EA=-=?rte=-=
Reatta Meadows
rrpct `I
yC/ I I 1 rl 117 Ac• R-1) /l -
~ZO
(N0 fatted)
Legend / - - f
100-Year Roodway FAT AM
100-Year Roodplain SPRING CREEK
EXHIBIT F
Conditions because the flowrates were higher. This is a result of the site's location in the lower portion of
the drainage basin where the peak flows of the stream occur after the peak flows from the site. The
Existing Conditions model provides a more conservative estimate of the peak flows in the stream.
The HEC-RAS computer model was used for the hydraulic analysis of the floodplain and
floodway. The water surface elevation from the existing FENIA map (#48041C0205D) was used as the
beginning elevation for the model. All other input data and assumptions are shown in Exhibit D.
Tabulated results of the HEC-RAS floodplain analysis are provided in Exhibit E and a map of the
floodplain and floodway is shown in Exhibit F. Exhibit G shows tabulated results of the floodway model
that was used to determine floodway limits.
2
+ FLOOD HYDROGRAPH PACKAGE (HEC-1)
MAY 1991
+ VERSION 4.0.1E
* Lahey F77L-EM/32 version 5.01
* Dodson & Associates, Inc.
* RUN DATE 10/27/03 TIME 13:03:11
X X XXXXXXX XXXXX X
X X X X X XX
X X X X X
XXXXXXX XXXX X XXXXX X
X X X X X
X X X X X X
X X XXXXXXX XXXXX XXX
1
1
Exhibit B
Hee-1 Analysis
+ U.S. ARMY CORPS OF ENGINEERS
* HYDROLOGIC ENGINEERING CENTER
* 609 SECOND STREET
* DAVIS, CALIFORNIA 95616
* (916) 551-1748
THIS PROGRAM REPLACES ALL PREVIOUS VERSIONS OF HEC-1 KNOWN AS HEC1 (JAN 73), HECIGS, HECIDB, AND HECIKW.
THE DEFINITIONS OF
VARIABLES -RTIMP- AND -RTIOR- HAVE CHANGED FROM THOSE USED WITH
THE 1973-STYLE INPUT STRUCTURE.
THE DEFINITION OF
-AMSKK-
ON RM-CARD WAS CHANGED WITH REVISIONS DATED 28 SEP 81. THIS IS THE FORTRAN77 VERSION
NEW OPTIONS: DAMBREAK OUTFLOW SUBMERGENCE , SINGLE EVENT DAMAGE CALCULATION
, DSS:WRITE STAGE FREQUENCY,
DSS:READ TIME SERI
ES AT DESIRED CALCULATION INTERVAL LOSS RATE:GREEN AND
AMPT IN
FILTRATION
KINEMATIC
WAVE: NEW FINITE DIFFERENCE ALGORITHM
HEC-1 INPUT
PAGE 1
LINE
ID..
1.
2.......3.......4.......5.......6.......7...
....8..
.....9......10
1
ID
TRIB THROUGH PROP. SUBDIVISION
2
IT
3
O1Jan01 0000 481
3
IO
5
0 0
4
JP
3
5
JR
PREC
13.5 11 9.8 8.8 7.4 6.2
4.5
+ EVENT
500 100 50 25 10 5
2Yr.
Storm
6
KK
DA1
7
KM
FILE
SpringCR.ihl
6
KM
P1
Original Conditions No Shenandoah Development
9
KM
P2
Proposed Condiition - Development of Shenandoah
10
KM
P3
Ultimate Development of Entire Drainage Basin
11
BA
.1326
12
PB
1
13
IN
30
OIFEB98 0000
14
PC
.0053
.0108 .0164 .0223 .0284 .0347 .0414
.0483
.0555 .0632
15
PC
.0712
.0797 .0887 .0984 .1089 .1203 .1328
.1467
.1625 .1808
16
PC
.2042
.2351 .2833 .6632 .7351 .7724 .7989
.8197
.8380 .8538
17
PC
.8676
.8801 .8914 .9019 .9115 .9206 .9291
.9371
.9446 .9519
18
PC
.9586
.9653 .9717 .9777 .9836 .9892 .9947
1.000
19
LS
0
75 0
20
UD
.81
21
KP
2
22
LS
0
75 0
23
UD
.81
24
KP
3
25
LS
0
87 52
26
UD
.55
27
KK
DA2
28
BA
.0486
29
LS
0
75 0
30
UD
.37
31
KP
2
32
LS
0
75 0
33
UD
.37
34
KP
3
35
LS
0
87 52
36
UD
.25
37
KK
PT.A
38
HC
2
39
KK
RTE A
40
RS
1
STOR -1
41
SQ
1
250 500 750 1000 1250 1500
1750
2000 2250
42
SQ
2500
2750 3000 3250 3500 3750 4000
4250
4500 4750
43
SV
.07
3.93 6.46 8.74 10.86 12.82 14.76
16.59
18.42 20.29
44
SV
22.14
23.88 25.57 27.23 28.83 30.45 32
33.59
35.15 36.67
REC-1 INPUT
PAGE 2
LINE
ID.
1
2.......3.......4.......5.......6.......7..
.....8.
......9......10
45
KK
DA3
46
BA
.0672
47
LS
0
75 0
Exhibit B
1 of 7
1
Exhibit B
Hec-1 Analysis
48
UD
.52
49
KP
2
50
LS
0
75
0
51
UD
.52
52
KP
3
53
LS
0
87
0
54
UD
.35
55
KK
DA4
56
BA
.0713
57
LS
0
75
0
58
UD
.58
59
KP
2
60
LS
0
75
0
61
UD
.58
62
KP
3
63
LS
0
87
52
64
UD
.4
65
KK
PT.B
66
HC
3
67
KK
RTE B
68
RS
1
STOR
-1
69
SQ
1
250
500
750 1000 1250
1500
1750
2000
2250
70
SQ
2500
2750
3000
3250 3500 3750
4000
4250
4500
4750
71
SV
.07
4.33
7.83
11.02 14.14 17.81
20.49
23.08
25.6
28.08
72
SV
30.55
32.98
35.32
37.63 39.96 42.49
44.69
46.83
48.95
51.05
73
KK
D,55
74
BA
.0766
75
LS
0
75
0
76
UD
.64
77
KP
2
78
LS
0
75
0
79
UD
.64
80
KP
3
81
LS
0
87
52
82
UD
.44
83
KK
DA6
84
BA
.1204
85
LS
0
75
0
86
UD
.94
87
KP
2
88
LS
0
75
0
89
UD
.94
90
KP
3
91
LS
0
87
52
92
UD
.64
HEC-1 INPUT
LINE
ID..
1....... 2.......3..
.....4.......5.......6..
.....7.......8..
.....9.
.....10
93
KK
PT.C
94
HC
3
95
KK
RTE C
96
RS
1
STOR
-1
97
SQ
1
250
500
750 1000 1250
1500
1750
2000
2250
98
SQ
2500
2750
3000
3250 3500 3750
4000
4250
4500
4750
99
SV
.03
2.47
5.44
9.73 10.57 13.11
15.59
17.96
20.81
23.27
100
SV
25.76
26.47
28.31
30.28 32 33.66
35.34
37.09
38.73
40.34
101
KK
DA7
102
BA
.0954
103
LS
0
75
0
104
UD
.84
105
KP
2
106
LS
0
75
0
107
UD
.84
108
KP
3
109
LS
0
87
52
110
UD
.57
111
KK
PT.D
112
HC
2
113
KK
RTE D
114
RS
1
STOR
-1
115
SQ
1
250
500
750 1000 1250
1500
1750
2000
2250
116
SQ
2500
2750
3000
3250 3500 3750
4000
4250
4500
4750
117
SV
.04
2.8
4.71
6.52 8.5 10.38
12.18
14.18
17.84
20.89
118
SV
23.71
26.44
28.84
31.14 33.36 35.57
37.75
39.94
42.29
44.64
119
KK
DA8
120
BA
.0854
121
LS
0
75
0
122
UD
.5
123
KP
2
124
LS
0
75
0
125
UD
.5
126
KP
3
127
LS
0
87
52
PAGE 3
Exhibit B
2 of 7
Exhibit B
Hec-1 Analysis
1
1
128
UD
.34
129
KK
PT.E
130
HC
2
131
KK
RTE E
132
RS
1
STOR
-1
133
SQ
1
250
500
750
1000
1250
1500
1750
2000
2250
134
SQ
2500
2750
3000
3250
3500
3750
4000
4250
4500
4750
135
SV
.06
4.41
7.45
10.3
13.1
16.12
18.91
21.50
24.52
27.77
136
SV
30.46
33.35
36.66
40.02
42.76
45.42
48.08
50.84
53.58
56.41
HEC-1
INPUT
PAGE 4
LINE
ID.
1.
2
.......3
.......4.
......5.......6
.......7
.......8.
......9.
.....10
137
KK
DA9
138
BA
.0389
139
LS
0
75
0
140
UD
.41
141
KP
2
142
LS
0
75
0
143
UD
.41
144
KP
3
145
LS
0
87
52
146
UD
.28
147
KK
DA10
148
BA
.0696
149
LS
0
75
0
150
UD
.86
151
KP
2
152
LS
0
76
5
153
UD
.84
154
KP
3
155
LS
0
87
52
156
UD
.59
157
KK
PT.F
158
HC
3
159
KK
RTE F
160
RS
1
STOR
-1
161
SQ
1
250
500
750
1000
1250
1500
1750
2000
2250
162
SQ
2500
2750
3000
3250
3500
3750
4000
4250
4500
4750
163
SV
.06
5.44
10.29
14.54
19.01
22.57
25.85
28.53
31.18
34.05
164
SV
36.71
39.22
41.58
43.75
45.68
47.78
49.85
51.61
53.48
55.34
165
KK
DA11
166
BA
.0752
167
LS
0
75
0
168
UD
.5
169
KP
2
170
LS
0
82
2B
171
UD
.41
172
KP
3
173
LS
0
87
52
174
UD
.34
175
KK
PT.G
176
HC
2
177
KK
RTE G
178
RS
1
STOR
-1
179
SQ
1
250
500
750
1000
1250
1500
1750
2000
2250
180
SQ
2500
2750
3000
3250
3500
3750
4000
4250
4500
4750
181
SV
.05
3.31
6.68
9.93
12.41
14.7
16.6
19.69
22.84
26.13
182
SV
29.56
33.27
36.9
40.37
42.7
45.69
48.79
50.09
52.4
54.57
REC-1
INPUT
PAGE
LINE
ID.
1
2
.......3
.......4.
......5.......6
.......7
.......8.
......9
......10
183
KK
DA12
184
BA
.0392
185
LS
0
75
0
186
UD
.47
187
KP
2
188
LS
0
78
15
189
UD
.43
190
KP
3
191
LS
0
87
52
192
UD
.32
193
KK
PT.H
194
HC
2
195
KK
ATE H
196
RS
1
STOR
-1
197
SQ
1
250
500
750
1000
1250
1500
1750
2000
2250
198
SQ
2500
2750
3000
3250
3500
3750
4000
4250
4500
4750
199
SV
.06
3.59
6.53
9.36
12.37
15.19
17.87
20.44
23.1
25.78
200
SV
28.47
31.17
34.23
37.63
41.61
44.98
48.29
56.02
52.4
54.57
201
KK
DA13
Exhibit B
3 of 7
Exhibit B
Hec-1 Analysis
202 BA .0431
203 LS 0 75
204 UD .67
205 KP 2
206 LS 0 80
207 UD .58
208 KP 3
209 LS 0 87
210 UD .46
211 KK PT.I
212 HC 2
213 2Z
1+
* FLOOD HYDROGRAPH PACKAGE (HEC-1)
* MAY 1991
* VERSION 4.0.1E
* Lahey F77L-EM/32 version 5.01
* Dodson 6 Associates, Inc.
* RUN DATE 10/27/03 TIME 13:03:11
0
22
52
* U.S. ARMY CORPS OF ENGINEERS
* HYDROLOGIC ENGINEERING CENTER
* 609 SECOND STREET
* DAVIS, CALIFORNIA 95616
* (916) 551-1748
TRIB THROUGH PROP. SUBDIVISION
3 IO
OUTPUT CONTROL VARIABLES
IPRNT 5 PRINT CONTROL
IPLOT 0 PLOT CONTROL
QSCAL 0. HYDROGRAPH PLOT SCALE
IT
HYDROGRAPH TIME DATA
NMIN 3 MINUTES IN COMPUTATION INTERVAL
IDATE 1Jan 1 STARTING DATE
ITIME 0000 STARTING TINE
NQ 481 NUMBER OF HYDROGRAPH ORDINATES
NDDATE 2 1 ENDING DATE
NDTIME 0000 ENDING TIME
ICENT 19 CENTURY MARK
COMPUTATION INTERVAL 0.05 HOURS
TOTAL TIME BASE 24.00 HOURS
ENGLISH UNITS
DRAINAGE AREA SQUARE MILES
PRECIPITATION DEPTH INCHES
LENGTH, ELEVATION FEET
FLOW CUBIC FEET PER SECOND
STORAGE VOLUME ACRE-FEET
SURFACE AREA ACRES
TEMPERATURE DEGREES FAHRENHEIT
JP
MULTI-PLAN OPTION
NPLAN 3 NUMBER OF PLANS
JR
MULTI-RATIO OPTION
RATIOS OF PRECIPITATION
13.50 11.00 9.80 8.80 7.40 6.20
4.50
1
PEAK FLOW AND STAGE (END-OF-PERIOD) SUMMARY FOR MULTIPLE PLAN-RATIO ECONOMIC COMPUTATIONS
FLOWS IN CUBIC FEET PER SECOND, AREA IN SQUARE MILES
TIME TO PEAK IN HOURS
RATIOS APPLIED TO PRECIPITATI
ON
OPERATION
STATION AREA PLAN RATIO 1 RATIO 2 RATIO 3
RATIO 4
RATIO 5
RATIO 6
RATIO 7
13.50 11.00 9.80
8.80
7.40
6.20
4.50
HYDROGRAPH
AT
+
DA1 0.13 1 FLOW 374. 289. 247.
213.
166.
127.
73.
TIME 12.10 12.10 12.10
12.10
12.10
12.10
12.15
2 FLOW 374. 289. 247.
213.
166.
127.
73.
TIME 12.10 12.10 12.10
12.10
12.10
12.10
12.15
3 FLOW 552. 446. 395.
352.
292.
241.
168.
TIME 11.80 11.80 11.80
11.80
11.80
11.80
11.80
HYDROGRAPH AT
+ DA2 0 05 1 FLOW 216 167 143 124 97 74 43
TIME
11.65
11.65
11.65
11.65
11.65
11.65
11.65
2 FLOW
216.
167.
143.
124.
97.
74.
43.
TIME
11.65
11.65
11.65
11.65
11.65
11.65
11.65
3 FLOW
283.
229.
203.
181.
150.
124.
87.
TIME
11.50
11.50
11.50
11.50
11.50
11.55
11.55
2 COMBINED AT
+ PT .A 0 18 1 FLOW 500 385 330 284 221 168 97
TIME
11.85
11.85
11.90
11.90
11.90
11.90
11.95
2 FLOW
500.
385.
330.
284.
221.
168.
97.
TIME
11.85
11.85
11.90
11.90
11.90
11.90
11.95
3 FLOW
748.
604.
535.
477.
396.
326.
228.
TIME
11.65
11.65
11.65
11.65
11.65
11.65
11.65
Exhibit B
4of7
Exhibit B
Hec-1 Analysis
ROUTED TO
+ RTE A 0.18
1
FLOW
486.
373.
319.
273.
209.
160.
92.
TIME
12.00
12.05
12.05
12.10
12.10
12.15
12.15
2
FLOW
486.
373.
319.
273.
209.
160.
92.
TIME
12.00
12.05
12.05
12.10
12.10
12.15
12.15
3
FLOW
713.
574.
506.
450.
372.
303.
206.
TIME
11.80
11.80
11.80
11.80
11.80
11.80
11.85
HYDROGRAPH AT
+ DA3 0.07
1
FLOW
250.
193.
166.
143.
112.
85.
49.
TIME
11.80
11.80
11.80
11.80
11.60
11.80
11.80
2
FLOW
250.
193.
166.
143.
112.
85.
49.
TIME
11.80
11.80
11.80
11.80
11.80
11.80
11.80
3
FLOW
342.
274.
241.
213.
175.
141.
94.
TIME
11.60
11.60
11.60
11.60
11.60
11.60
11.60
HYDROGRAPH AT
+ DA4 0.07
1
FLOW
249.
192.
165.
142.
111.
85.
49.
TIME
11.85
11.85
11.85
11.85
11.85
11.85
11.90
2
FLOW
249.
192.
165.
142.
111.
85.
49.
TIME
11.85
11.85
11.85
11.85
11.85
11.85
11.90
3
FLOW
351.
284.
251.
224.
186.
153.
107.
TIME
11.65
11.65
11.65
11.65
11.65
11.65
11.65
3 COMBINED AT
+ PT.B 0.32
1
FLOW
960.
737.
628.
532.
413.
314.
182.
TIME
11.85
11.90
11.90
11.95
11.90
11.90
11.95
2
FLOW
960.
737.
628.
532.
413.
314.
182.
TIME
11.85
11.90
11.90
11.95
11.90
11.90
11.95
3
FLOW
1366.
1097.
966.
858.
706.
571.
387.
TIME
11.70
11.70
11.70
11.70
11.70
11.70
11.70
ROUTED TO
+ RTE B 0.32
1
FLOW
906.
692.
588.
500.
386.
292.
167.
TIME
12.05
12.05
12.10
12.10
12.10
12.15
12.20
2
FLOW
906.
692.
588.
500.
386.
292.
167.
TIME
12.05
12.05
12.10
12.10
12.10
12.15
12.20
3
FLOW
1238.
1004.
884.
784.
642.
517.
350.
TIME
11.85
11.85
11.85
11.85
11.85
11.85
11.90
HYDROGRAPH AT
+ DA5 0.08
1
FLOW
252.
194.
167.
144.
112.
85.
50.
TIME
11.90
11.90
11.90
11.90
11.90
11.95
11.95
2
FLOW
252.
194.
167.
144.
112.
85.
50.
TIME
11.90
11.90
11.90
11.90
11.90
11.95
11.95
3
FLOW
360.
291.
257.
230.
191.
157.
110.
TIME
11.70
11.70
11.70
11.70
11.70
11.70
11.70
HYDROGRAPH AT
+ DA6 0.12
1
FLOW
307.
237.
203.
175.
136.
104.
60.
TIME
12.20
12.25
12.25
12.25
12.25
12.25
12.30
2
FLOW
307.
237.
203.
175.
136.
104.
60.
TIME
12.20
12.25
12.25
12.25
12.25
12.25
12.30
3
FLOW
457.
369.
327.
291.
242.
199.
139.
TIME
11.90
11.90
11.90
11.90
11.90
11.90
11.90
3 COMBINED AT
+ PT.C 0.52
1
FLOW
1438.
1102.
939.
802.
621.
471.
270.
TIME
12.05
12.05
12.05
12.10
12.10
12.10
12.15
2
FLOW
1438.
1102.
939.
802.
621.
471.
270.
TIME
12.05
12.05
12.05
12.10
12.10
12.10
12.15
3
FLOW
2013.
1632.
1438.
1276.
1051.
854.
584.
TIME
11.80
11.80
11.80
11.80
11.85
11.85
11.85
ROUTED TO
+ RTE C 0.52
1
FLOW
1397.
1077.
933.
757.
588.
454.
263.
TIME
12.15
12.15
12.15
12.30
12.30
12.25
12.30
2
FLOW
1397.
1077.
933.
757.
588.
454.
263.
TIME
12.15
12.15
12.15
12.30
12.30
12.25
12.30
3
FLOW
1923.
1564.
1379_
1227.
1025.
809.
543.
TIME
11.95
11.95
11.95
11.95
11.90
12.00
12.00
HYDROGRAPH AT
+ DA7 0.10
1
FLOW
263.
202.
174.
150.
117.
89.
52.
TIME
12.10
12.10
12.15
12.15
12.15
12.15
12.20
2
FLOW
263.
202.
174.
150.
117.
89.
52.
TIME
12.10
12.10
12.15
12.15
12.15
12.15
12.20
3
FLOW
388.
314.
278.
248.
205.
169.
118.
TIME
11.80
11.80
11.80
11.80
11.80
11.80
11.80
2 COMBINED AT
+ PT.D 0.61
1
FLOW
1659.
1280.
1106.
900.
701.
541.
314.
TIME
12.15
12.15
12.15
12.30
12.25
12.25
12.25
2
FLOW
1659.
1280.
1106.
900.
701.
541.
314.
TIME
12.15
12.15
12.15
12.30
12.25
12.25
12.25
3
FLOW
2289.
1863.
1643.
1463.
1226.
963.
650.
TIME
11.90
11.90
11.90
11.90
11.90
11.95
11.95
ROUTED TO
+ RTE D 0.61
1
FLOW
1633.
1261.
1074.
886.
694.
534.
309.
TIME
12.25
12.25
12.25
12.35
12.35
12.35
12.40
2
FLOW
1633.
1261.
1074.
886.
694.
534.
309.
TIME
12.25
12.25
12.25
12.35
12.35
12.35
12.40
3
FLOW
2183.
1796.
1603.
1430.
1187.
928.
640.
Exhibit B
5 of 7
Exhibit B
Hec-
1 Analysis
TIME
12.05
12.05
12.00
12.00
12.00
12.05
12.05
HYDROGRAPH AT
09 1
DAB 0
FLOW
326.
251.
216.
186.
145.
110.
64.
.
+
TIME
11.75
11.75
11.75
11.75
11.75
11.80
11.80
2
FLOW
326.
251.
216.
186.
145.
110.
64.
TIME
11.75
11.75
11.75
11.75
11.75
11.80
11.80
3
FLOW
451.
364.
322.
288.
239.
197.
138.
TIME
11.60
11.60
11.60
11.60
11.60
11.60
11.60
2 COMBINED AT
70 1
E 0
PT
FLOW
1812.
1400.
1192.
975.
765.
590.
342.
.
.
+
TIME
12.20
12.20
12.20
12.30
12.30
12.30
12.30
2
FLOW
1812.
1400.
1192.
975.
765.
590.
342.
TIME
12.20
12.20
12.20
12.30
12.30
12.30
12.30
3
FLOW
2373.
1969.
1756.
1567.
1300.
1012.
700.
TIME
12.00
11.95
11.95
11.95
12.00
12.05
12.00
ROUTED TO
70 1
RTE E 0
FLOW
1765.
1354.
1142.
954.
748.
574.
330.
.
+
TIME
12.35
12.35
12.35
12.45
12.45
12.45
12.50
2
FLOW
1765.
1354.
1142.
954.
748.
574.
330.
TIME
12.35
12.35
12.35
12.45
12.45
12.45
12.50
3
FLOW
2301.
1901.
1694.
1502.
1232.
973.
677.
TIME
12.15
12.15
12.10
12.10
12.10
12.15
12.15
HYDROGRAPH AT
+ DA9 0.04 1
FLOW
165.
127.
109.
94.
73.
56.
33.
TIME
11.65
11.65
11.70
11.70
11.70
11.70
11.70
2
FLOW
165.
127.
109.
94.
73.
56.
33.
TIME
11.65
11.65
11.70
11.70
11.70
11.70
11.70
3
FLOW
220.
178.
157.
140.
117.
96.
67.
TIME
11.55
11.55
11.55
11.55
11.55
11.55
11.55
HYDROGRAPH AT
07 1
DA10 0
FLOW
189.
145.
125.
108.
84.
64.
37.
.
+
TIME
12.15
12.15
12.15
12.15
12.15
12.20
12.20
2
FLOW
196.
152.
131.
113.
89.
69.
41.
TIME
12.10
12.10
12.10
12.15
12.15
12.15
12.15
3
FLOW
278.
224.
199.
177.
147.
121.
85.
TIME
11.85
11.85
11.85
11.85
11.85
11.85
11.85
3 COMBINED AT
+ PT.F 0.81 1
FLOW
2001.
1533.
1296.
1081.
848.
651.
373.
TIME
12.30
12.35
12.35
12.40
12.40
12.40
12.45
2
FLOW
2005.
1537.
1300.
1064.
851.
654.
376.
TIME
12.30
12.30
12.35
12.40
12.40
12.40
12.45
3
FLOW
2580.
2138.
1906.
1690.
1388.
1097.
763.
TIME
12.10
12.05
12.05
12.10
12.10
12.10
12.10
ROUTED TO
+ RTE F 0.81 1
FLOW
1951.
1474.
1234.
1037.
808.
616.
348.
TIME
12.45
12.50
12.50
12.60
12.60
12.60
12.70
2
FLOW
1955.
1477.
1238.
1040.
811.
619.
351.
TIME
12.45
12.50
12.50
12.60
12.60
12.60
12.70
3
FLOW
2520.
2074.
1836.
1618.
1307.
1031.
716.
TIME
12.25
12.20
12.20
12.25
12.25
12.30
12.30
HYDROGRAPH AT
+ DA11 0.08 1
FLOW
287.
221.
190.
164.
128.
97.
57.
TIME
11.75
11.75
11.75
11.75
11.75
11.80
11.80
2
FLOW
352.
280.
246.
217.
177.
143.
94.
TIME
11.65
11.65
11.65
11.65
11.65
11.65
11.65
3
FLOW
397.
321.
284.
253.
210.
174.
121.
TIME
11.60
11.60
11.60
11.60
11.60
11.60
11.60
2 COMBINED AT
+ PT.G 0.88 1
FLOW
2063.
1555.
1303.
1090.
850.
648.
366.
TIME
12.40
12.45
12.50
12.55
12.55
12.60
12.70
2
FLOW
2050.
1547.
1298.
1088.
850.
650.
370.
TIME
12.40
12.45
12.50
12.55
12.55
12.60
12.65
3
FLOW
2641.
2174.
1925.
1696.
1366.
1075.
747.
TIME
12.20
12.20
12.20
12.20
12.20
12.30
12.30
ROUTED TO
+ RTE G 0.88 1
FLOW
2007.
1529.
1285.
1076.
838.
632.
357.
TIME
12.55
12.60
12.60
12.65
12.70
12.75
12.85
2
FLOW
1995.
1522.
1280.
1074.
838.
634.
361.
TIME
12.55
12.60
12.60
12.65
12.70
12.75
12.85
3
FLOW
2558.
2104.
1857.
1644.
1341.
1057.
725.
TIME
12.35
12.35
12.35
12.35
12.30
12.40
12.45
HYDROGRAPH AT
+ DA12 0.04 1
FLOW
155.
119.
102.
88.
69.
53.
31.
TIME
11.75
11.75
11.75
11.75
11.75
11.75
11.75
2
FLOW
171.
134.
117.
102.
82.
64.
40.
TIME
11.70
11.70
11.70
11.70
11.70
11.70
11.70
3
FLOW
211.
170.
151.
135.
112.
92.
65.
TIME
11.60
11.60
11.60
11.60
11.60
11.60
11.60
2 COMBINED AT
+ PT.H 0.92 1
FLOW
2052.
1563.
1313.
1099.
855.
645.
364.
TIME
12.55
12.55
12.60
12.65
12.70
12.75
12.85
2
FLOW
2037.
1556.
1307.
1097.
855.
647.
369.
TIME
12.55
12.55
12.60
12.65
12.70
12.75
12.80
Exhibit B
6 of 7
ROUTED TO
+ RTE H
HYDROGRAPH AT
+ DA13
2 COMBINED AT
+ PT.I
rrr NORMAL END OF HEC-1 rrr
Exhibit
B
Hec-1 Analysis
3
FLOW
2603. 2141.
1892.
1673.
1368.
1075.
737.
TIME
12.35 12.30
12.30
12.30
12.30
12.40
12.45
0.92
1
FLOW
2017. 1537.
1284.
1081.
839.
634.
358.
TIME
12.70 12.70
12.75
12.80
12.85
12.90
13.00
2
FLOW
2003. 1530.
1279.
1078.
840.
637.
363.
TIME
12.70 12.70
12.70
12.80
12.85
12.85
12.95
3
FLOW
2560. 2099.
1852.
1639.
1328.
1051.
722.
TIME
12.45 12.45
12.45
12.45
12.45
12.50
12.55
0.04
1
FLOW
138. 106.
91.
79.
61.
47.
27.
TIME
11.95 11.95
11.95
11.95
11.95
11.95
12.00
2
FLOW
163. 129.
113.
99.
80.
64.
41.
TIME
11.85 11.85
11.85
11.85
11.85
11.85
11.85
3
FLOW
198. 160.
142.
126.
105.
87.
60.
TIME
11.70 11.70
11.70
11.70
11.70
11.70
11.70
0.96
1
FLOW
2081. 1584.
1325.
1112.
864.
652.
368.
TIME
12.65 12.70
12.70
12.80
12.80
12.85
12.95
2
FLOW
2060. 1573.
1317.
1108.
864.
655.
373.
TIME
12.65 12.70
12.70
12.75
12.80
12.85
12.95
3
FLOW
2622. 2150.
1897.
1679.
1362.
1076.
738.
TIME
12.45 12.45
12.40
12.45
12.45
12.50
12.55
Exhibit B
7 of 7
Exhibit C
Drainage Area Parameters
General
PLAN 1
PLAN 2
PLAN 3
AREA
AREA
AREA
HYD
VERT
SLOPE
URV
LAG
CURVE
LAG
CURVE
LAG
#
ACRES
MILES
LENGTH
DROP
FT/FT
#
HOURS
#
HOURS
#
HOURS
1
84.85
0.1326
3392
49.88
0.015
75
0.81
75
0.81
87
0.55
2
31.10
0.0486
1701
39.68
0.023
75
0.37
75
0.37
87
0.25
3
43.00
0.0672
2231
40.86
0.018
75
0.52
75
0.52
87
0.35
4
45.63
0.0713
2795
58.16
0.021
75
0.58
75
0.58
87
0.40
5
49.02
0.0766
2604
39.61
0.015
75
0.64
75
0.64
87
0.44
6
77.08
0.1204
4287
68.41
0.016
75
0.94
75
0.94
87
0.64
7
61.04
0.0954
3353
45.18
0.013
75
0.84
75
0.84
87
0.57
8
54.64
0.0854
2259
45.2
0.020
75
0.50
75
0.50
87
0.34
9
24.90
0.0389
1616
28.19
0.017
75
0.41
75
0.41
87
0.28
10
44.54
0.0696
3170
36.69
0.012
75
0.86
76
0.84
87
0.59
11
48.14
0.0752
2199
41.87
0.019
75
0.50
82
0.41
87
0.34
12
25.08
0.0392
1907
32.78
0.017
75
0.47
78
0.43
87
0.32
13
27.59
0.0431
2467
31.32
0.013
75
0.67
80
0.58
87
0.46
Exhibit C
Drainage Area Parameters
0317-Floodplain-lag.xls
Exhibit D
HEC-RAS Data
HEC-RAS September 1998 Version 2.2
U.S. Army Corp of Engineers
Hydrologic Engineering Center
609 Second Street, Suite D
Davis, California 95616-4687
(916) 756-1104
X X
XXXXXX
XXXX
XXXX
XX XXXX
X X
X
X X
X X
X X X
X X
X
X
X X
X X X
XXXXXXX
XXXX
X
XXX XXXX
XXXXXX XXXX
X X
X
X
X X
X X X
X X
X
X X
X X
X X X
X X
XXXXXX
XXXX
X X
X X XXXXX
PROJECT DATA
Project Title: Shendandoah Phase 11 Flood Plain Analysi
Project File : 0317-2.prj
Run Date and Time: 4/1/2004 2:30:49 PM
Project in English units
PLAN DATA
Plan Title: NF Spring Creek Analysis
Plan File : f:\Shenandoah\phase 11\Flood Plain Analysis\Hec-Ras\0317-2.p04
Geometry Title: Existing Conditions
Geometry File : f:\Shenandoah\phase 11\Flood Plain Analysis\Hec-Ras\0317-
2.g01
Flow Title : North Fork Spring Creek Analysis
Flow File : f:\Shenandoah\phase 11\Flood Plain Analysis\Hec-Ras\0317-
2.f01
Plan Summary Information:
Number of: Cross Sections = 26 Mulitple Openings = 0
Culverts = 0 Inline Weirs = 0
Bridges = 0
Computational Information
Water surface calculation tolerance = 0.01
Critical depth calculaton tolerance = 0.01
Maximum number of interations = 20
Maximum difference tolerance = 0.3
Flow tolerance factor = 0.001
Computation Options
Critical depth computed only where necessary
Conveyance Calculation Method: At breaks in n values only
Exhibit D
1 of 14
Friction Slope Method:
Computational Flow Regime:
Exhibit D
HEC-RAS Data
Average Conveyance
Subcritical Flow
FLOW DATA
Flow Title: North Fork Spring Creek Analysis
Flow File : f:\Shenandoah\phase 11\Flood Plain Analysis\Hec-Ras\0317-2.f01
Flow Data (cfs)
River
Reach
RS
500yr Ex.
500yr
Pr.
500yr U
lt.
100yr Ex.
100yr Pr.
100yr
Ult.
50yr
Ex.
50yr Pr
.
N.F.
Spring
CreeReach
A
12650.45
500
500
784
385
385
604
330
330
N.F.
Spring
CreeReach
A
11306.79
960
960
1366
737
737
1097
628
628
N.F.
Spring
CreeReach
A
9686.47
1438
1438
2013
1102
1102
1632
939
939
N.F.
Spring
CreeReach
A
8697.48
1659
1659
2289
1280
1280
1863
1106
1106
N.F.
Spring
CreeReach
A
7318.65
1812
1812
2373
1400
1400
1969
1192
1192
N.F.
Spring
CreeReach
A
5716.37
2001
2005
2580
1533
1537
2138
1296
1300
N.F.
Spring
CreeReach
A
4655.57
2063
2050
2641
1555
1547
2174
1303
1298
N.F.
Spring
CreeReach
A
3725.17
2052
2037
2603
1563
1556
2141
1313
1307
River
Reach
RS
50y
r Ult.
25yr
Ex.
25yr Pr.
25yr Ult.
10yr Ex.
10yr
Pr.
10yr Ult.
N.F.
Spring
CreeReach
A
12650.45
535
284
284
477
221
221
396
N.F.
Spring
CreeReach
A
11306.79
966
532
532
858
413
413
706
N.F.
Spring
CreeReach
A
9686.47
1438
802
802
1276
621
621
1051
N.F.
Spring
CreeReach
A
8697.48
1643
900
900
1463
701
701
1226
N.F.
Spring
CreeReach
A
7318.65
1756
975
975
1567
765
765
1300
N.F.
Spring
CreeReach
A
5716.37
1906
1081
1084
1690
848
851
1388
N.F.
Spring
CreeReach
A
4655.57
1925
1090
1088
1696
850
850
1366
N.F.
Spring
CreeReach
A
3725.17
1892
1099
1097
1673
855
855
1368
Boundary Conditions
Exhibit D
2of14
Exhibit D
HEC-RAS Data
River
Reach
Profi
le
Upstream
Downstr
eam
N.F.
Spring CreeReach
A
500yr
Ex.
Normal
S =
.0765
Normal
S = .0179
N.F.
Spring CreeReach
A
500yr
Pr.
Normal
S =
.0765
Normal
S = .0179
N.F.
Spring CreeReach
A
500yr
Ult.
Normal
S =
.0765
Normal
S = .0179
N.F.
Spring CreeReach
A
100yr
Ex.
Normal
S =
.0765
Known WS = 279
N.F.
Spring CreeReach
A
100yr
Pr.
Normal
S =
.0765
Known WS = 279
N.F.
Spring CreeReach
A
100yr
Ult.
Normal
S =
.0765
Known WS = 279
N.F.
Spring CreeReach
A
50yr
Ex.
Normal
S =
.0765
Normal
S = .0179
N.F.
Spring CreeReach
A
50yr
Pr.
Normal
S =
.0765
Normal
S = .0179
N.F.
Spring CreeReach
A
50yr
Ult.
Normal
S =
.0765
Normal
S = .0179
N.F.
Spring CreeReach
A
25yr
Ex.
Normal
S =
.0765
Normal
S = .0179
N.F.
Spring CreeReach
A
25yr
Pr.
Normal
S =
.0765
Normal
S = .0179
N.F.
Spring CreeReach
A
25yr
Ult.
Normal
S =
.0765
Normal
S = .0179
N.F.
Spring CreeReach
A
10yr
Ex.
Normal
S =
.0765
Normal
S = .0179
N.F.
Spring CreeReach
A
10yr
Pr.
Normal
S =
.0765
Normal
S = .0179
N.F.
Spring CreeReach
A
10yr
Ult.
Normal
S =
.0765
Normal
S = .0179
GEOMETRY DATA
Geometry Title: Existing Conditions
Geometry File : f:\Shenandoah\phase 11\Flood Plain Analysis\Hec-Ras\0317-2.g01
CROSS SECTION RIVER: N.F. Spring Cree
REACH: Reach A RS: 12650.45
INPUT
Description:
Station Elevation Data num= 12
Sta Elev Sta Elev Sta Elev Sta Elev Sta Elev
500 323.2 565 322 635 321.5 787 320 848 319.6
910 318 945 317.3 1018 318 1032 320 1103 322
1207 324 1314 326
Manning's n Values num= 3
Sta n Val Sta n Val Sta n Val
500 .075 910 .035 1018 .075
Exhibit D
3of14
Exhibit D
HEC-RAS Data
Bank Sta: Left Right Lengths: Left Channel Right
910 1018 168.23 169.86 171.24
CROSS SECTION RIVER: N.F. Spring Cree
REACH: Reach A RS: 12480.59
INPUT
Description:
Station Elevation Data num= 10
Sta Elev Sta Elev Sta Elev Sta
372 324 419 323.4 500 322 612
878 316 905 318 966 320 1025
Manning's n Values num= 3
Sta n Val Sta n Val Sta n Val
372 .075 832 .035 905 .075
Bank Sta: Left Right Lengths: Left Channel Right
832 905 334.51 349.03 347.07
CROSS SECTION RIVER: N.F. Spring Cree
REACH: Reach A RS: 12131.56
INPUT
Description:
Station Elevation Data num= 12
Sta Elev Sta Elev Sta Elev Sta
500 324 588 322 647 320 744
910 316 997 315.73 1089 316 1186
1361 322 1444 324
Manning's n Values num= 3
Sta n Val Sta n Val Sta n Val
500 .075 910 .035 1089 .075
Bank Sta: Left Right Lengths: Left Channel Right
910 1089 395.32 377.53 368.27
CROSS SECTION RIVER: N.F. Spring Cree
REACH: Reach A RS: 11754.03
INPUT
Description:
Station Elevation Data num= 16
Coeff Contr. Expan.
.1 .3
Elev Sta Elev
320 832 318
322 1118 324
Coeff Contr. Expan.
.1 .3
Elev
Sta
Elev
318
833
316.8
318
1266
320
Coeff
Contr.
Expan.
.1
.3
Sta
Elev
Sta
Elev
Sta
Elev
Sta
Elev
Sta
500
324
627
322
721
320
776
318
898
958
314
990
313.72
1015
314
1059
314.25
1158
1277
315.1
1350
316
1427
318
1512
320
1584
1685
324
Manning's
n Values
num=
3
Sta
n Val
Sta
n Val
Sta
n Val
500
.075
958
.035
1015
.075
Bank Sta:
Left
Right
Lengths:
Left
Channel
Right
Coeff
Contr.
958
1015
454.41
447.24
431.89
.1
Elev
316
314
322
Expan.
.3
Exhibit D
4of14
Exhibit D
HEC-RAS Data
CROSS SECTION
RI
VER: N.F.
Spring
Cree
REACH: Reach A
RS: 11306.79
INPUT
Description:
Station Elevation
Data
num=
15
Sta Elev
Sta
Elev
Sta
Elev
Sta
Elev
Sta
Elev
500 320
668
318
853
316
1033
314
1179
312
1194 310
1245
309.14
1255
310
1356
311.8
1464
310
1528 312
1620
314
1695
316
1767
318
1841
320
Manning's n Value
s
num=
3
Sta n Val
Sta
n Val
Sta
n Val
500 .075
1194
.035
1255
.075
Bank Sta: Left
Right
Lengths:
Left Channel
Right
Coeff
Contr.
Expan.
1194
1255
465.98
479.44
473.4
.1
.3
CROSS SECTION
RI
VER: N.F.
Spring
Cree
REACH: Reach A
RS: 10827.35
INPUT
Description:
Station Elevation
Data
num=
19
Sta Elev
Sta
Elev
Sta
Elev
Sta
Elev
Sta
Elev
500 320
583
318
657
317
755
316
854
314
950 313.2
1036
312
1152
310
1206
309.5
1248
310
1296 309
1344
308
1452
309
1558
310
1631
312
1724 314
1782
316
1873
318
1926
320
Manning's n Value
s
num=
3
Sta n Val
Sta
n Val
Sta
n Val
500 .075
1296
.035
1452
.075
Bank Sta: Left
Right
Lengths:
Left C
hannel
Right
Coeff
Contr.
Expan.
1296
1452
363.31
368.81
369.02
.1
.3
CROSS SECTION
RI
VER: N.F.
Spring
Cree
REACH: Reach A
RS: 10458.54
INPUT
Description:
Station Elevation
Data
num=
24
Sta Elev
Sta
Elev
Sta
Elev
Sta
Elev
Sta
Elev
500 320
611
318
736
316
816
314
916
312
1022 310
1244
308
1267
306
1277
305.82
1282
306
1297 307.4
1422
307.8
1507
306
1613
304
1630
302.32
1637 304
1642
306
1650
308
1678
310
1718
312
1804 314
1890
316
1951
318
2000
320
Manning's n Value
s
num=
3
Sta n Val
Sta
n Val
Sta
n Val
500 .075
1267
.035
1282
.075
Bank Sta: Left
Right
Lengths:
Left Channel
Right
Coeff
Contr.
Expan.
1267
1282
389.39
392.88
380.45
.1
.3
Exhibit D
5of14
CROSS SECTION
REACH: Reach A
Exhibit D
HEG-RAS Data
RIVER: N.F. Spring Cree
RS: 10065.66
INPUT
Descript
ion:
Station
Elevation
Data
Sta
Elev
Sta
100
316
1067
1528
306
1664
1779
306.25
1791
1983
299.05
1989
2100
308
2156
num=
25
Elev
Sta
Elev
Sta
Elev
Sta
Elev
314
1158
312
1278
310
1349
308
304
1675
302.73
1687
304
1755
306
306
1842
304
1973
302
1978
300
300
1994
302
1998
304
2058
306
310
2203
312
2283
314
2359
316
Manning's n Values num= 3
Sta n Val Sta n Val Sta n Val
100 .075 1664 .035 1687 .075
Bank Sta: Left Right Lengths: Left Channel Right
1664 1687 388.77 379.19 369.65
CROSS SECTION RIVER: N.F. Spring Cree
REACH: Reach A RS: 9686.47
INPUT
Description:
Station Elevation
Data
num=
Sta Elev
Sta
Elev
1000 318
1075
316
1498 309.3
1662
308
2029 300
2050
298.89
2348 302
2369
300
2409 304
2457
306
2711 314
2793
315.8
Coeff Contr. Expan.
.1 .3
27
Sta
Elev
Sta
Elev
Sta
Elev
1183
314
1291
312
1403
310
1775
306
1962
304
2020
302
2078
300
2187
302
2277
303
2382
298.2
2393
300
2403
302
2509
308
2563
310
2616
312
Manning's n Values num= 3
Sta n Val Sta n Val Sta n Val
1000 .075 2029 .035 2078 .075
Bank Sta: Left Right Lengths: Left Channel Right
2029 2078 575.24 610.14 584.85
CROSS SECTION RIVER: N.F. Spring Cree
REACH: Reach A RS: 9076.33
INPUT
Description:
Station Elevation
Data
num=
15
Sta
Elev
Sta
Elev
Sta
Elev
500
310
568
308
699
306
1339
300
1400
298
1409
296.54
1655
302
1775
304
1868
306
Manning's
n Values
num=
3
Sta
n Val
Sta
n Val
Sta
n Val
500
.075
1400
.035
1414
.075
Coeff Contr. Expan.
.1 .3
Sta
Elev
Sta
Elev
863
304
1133
302
1414
298
1418
300
1957
308
2048
310
Bank Sta: Left Right Lengths: Left Channel Right Coeff Contr. Expan.
Exhibit D
6of14
1400 1414
CROSS SECTION
REACH: Reach A
Exhibit D
HEGRAS Data
372.4 378.85 384.61
RIVER: N.F. Spring Cree
RS: 8697.48
INPUT
Description:
Station Elevation
Data
num=
Sta
Elev
Sta
Elev
500
310
628
308
1240
300
1293
299.75
1587
298
1590
296
1608
296
1616
298
1705
300
1763
298
2044
306
26
.1 .3
Sta
Elev
Sta
Elev
Sta
Elev
705
306
881
304
1106
302
1381
300
1487
298
1508
298.5
1595
294
1599
293.72
1603
294
1659
298
1667
300
1685
300.25
1775
300
1883
302
1967
304
Manning's n Values num= 3
Sta n Val Sta n Val Sta n Val
500 .075 1590 .035 1608 .075
Bank Sta: Left Right Lengths: Left Channel Right
1590 1608 74.23 76.02 67.72
CROSS SECTION RIVER: N.F. Spring Cree
REACH: Reach A RS: 8621.46
INPUT
Description:
Station Elevation Data
Sta
Elev
Sta
500
310
584
1225
300
1482
1534
298
1543
1586
296
1622
1673
294
1708
2042
306
2125
Manning's
n Value
s
Sta
n Val
Sta
500
.075
1659
Bank Sta:
Left
Right
1659
1673
CROSS SECTION
R
REACH: Reach A
INPUT
Description:
Station Elevation
Data
Sta
Elev
Sta
1000
300
1045
1296
296
1321
1462
294
1489
1573
288.39
1604
1740
294
1764
2067
300
2130
Coeff Contr. Expan.
.1 .3
num=
27
Elev
Sta
Elev
Sta
Elev
Sta
Elev
308
697
306
856
304
972
302
298
1490
297.5
1497
298
1517
298.5
296
1550
294
1555
293.9
1560
294
297.4
1652
296
1659
294
1666
293.56
296
1774
300
1884
302
1970
304
308
num= 3
n Val Sta n Val
.035 1673 .075
Lengths: Left Channel Right
1206.4 1302.81 1243.98
IVER: N.F. Spring Cree
RS: 7318.65
Coeff Contr. Expan.
.1 .3
num=
27
Elev
Sta
Elev
Sta
Elev
Sta
Elev
299.5
1183
298
1258
296
1272
295.5
296.5
1342
296
1348
294
1415
293.8
294.2
1519
294
1528
292
1543
290
290
1624
292
1635
294
1684
294.5
293.8
1782
294
1839
296
1974
298
302
Exhibit D
7of14
Exhibit D
HEC-RAS Data
Manning's n Values num= 3
Sta n Val Sta n Val Sta n Val
1000 .075 1543 .035 1604 .075
Bank Sta: Left Right Lengths: Left Channel Right
1543 1604 255.41 248.4 251.61
CROSS SECTION RIVER: N.F. Spring Cree
REACH: Reach A RS: 7070.25
INPUT
Description:
Coeff Contr. Expan.
.1 .3
Station Elevation
Data
num=
19
Sta Elev
Sta
Elev
Sta
Elev
Sta
Elev
Sta
Elev
1000 297
1059
296
1085
294
1096
292
1108
290
1251 288
1259
287.61
1263
288
1269
290
1308
292
1353 294
1423
294.5
1487
294
1516
293.8
1545
294
1608 294.5
1695
296
1789
298
1832
300
Manning's n Value
s
num=
3
Sta n Val
Sta
n Val
Sta
n Val
1000 .075
1251
.035
1263
.075
Bank Sta: Left
Right
Lengths:
Left C
hannel
Right
Coeff
Contr.
Expan.
1251
1263
741.68
768.77
652.7
.1
.3
CROSS SECTION
RI
VER: N.F.
Spring
Cree
REACH: Reach A
RS: 6301.48
INPUT
Description:
Station Elevation
Data
num=
28
Sta Elev
Sta
Elev
Sta
Elev
Sta
Elev
Sta
Elev
1000 300
1182
298.5
1353
298
1418
296
1590
294
1652 292
1691
291.5
1730
292
1744
292.2
1758
292
1808 290
1833
288
1842
286
1847
285.86
1852
286
1865 288
1883
290
2012
292
2040
292.5
2068
292
2079 290
2091
289.8
2106
290
2123
292
2247
294
2358 296
2425
298
2506
300
Manning's n value
s
num=
3
Sta n Val
Sta
n Val
Sta
n Val
1000 .075
1833
.035
1865
.075
Bank Sta: Left
Right
Lengths:
Left C
hannel
Right
1833
1865
569.1
585.11
544.19
CROSS SECTION
RI
VER: N.F.
Spring
Cree
REACH: Reach A
RS: 5716.37
INPUT
Description:
Station Elevation
Data
num=
26
Sta Elev
Sta
Elev
Sta
Elev
Sta
1000 300
1140
298
1235
296
1329
1569 290
1579
288
1592
286
1594
Coeff Contr. Expan.
.1 .3
Elev Sta Elev
294 1496 292
284 1617 283.81
Exhibit D
8of14
Exhibit D
HEC-RAS Data
1629 284
1655
286
1674 288
1701
1930 290.8
1986
290
2000 288
2050
2155 290
2169
292
2277 294
2362
2459 300
Manning's n Value
s
num=
3
Sta n Val
Sta
n Val
Sta n Val
1000 .075
1592
.035
1629 .075
Bank Sta: Left
Right
Lengths:
Left Channel
Right
1592
1629
285.33 324.89
325.59
CROSS SECTION
RI
VER: N.F.
Spring Cree
REACH: Reach A
RS: 5391
.48
INPUT
Description:
Station Elevation
Data
num=
25
290 1803 291.4
286 2087 288
296 2420 298
Coeff Contr. Expan.
.1 .3
Sta
Elev
Sta
Elev
Sta
Elev
Sta
Elev
Sta
Elev
1000
300
1112
298
1172
296
1285
294
1432
292
1540
290
1561
288
1620
286
1632
284
1645
283.01
1659
284
1701
285
1732
284
1764
282.98
1796
284
1846
286
1913
284.5
1974
286
2131
288
2162
290
2173
292
2288
294
2349
296
2393
298
2427
300
Manning's n Values
num=
3
Sta n Val
Sta
n Val
Sta
n Val
1000 .075
1632
.035
1659
.075
Bank Sta: Left Right
Lengths:
Left C
hannel
Right
1632
1659
384.13
393.99
374.89
CROSS SECTION
RI
VER: N.F.
Spring
Cree
REACH: Reach A
RS: 4997.49
INPUT
Description:
Station Elevation
Data
num=
16
Sta Elev
Sta
Elev
Sta
Elev
Sta
1000 292
1136
290
1228
288
1407
1434 282.07
1450
284
1474
286
1529
1756 290
1868
292
1972
294
2015
2149 300
Manning's n Values
num=
3
Sta n Val
Sta
n Val
Sta
n Val
1000 .075
1423
.035
1450
.075
Bank Sta: Left Right
Lengths:
Left C
hannel
Right
1423
1450
258.49
208.06
205.49
CROSS SECTION
RI
VER: N.F.
Spring
Cree
REACH: Reach A
RS: 4789.43
INPUT
Description:
Station Elevation
Data
num=
32
Coeff Contr. Expan.
.1 .3
Elev
Sta
Elev
286
1423
284
288
1659
288.9
296
2085
298
Coeff
Contr.
Expan.
.1
.3
Exhibit D
9of14
Exhibit D
HEC-RAS Data
Sta
Elev
1000
296
1249
288
1395
290
- 1583
280
1686
285.5
1753
280
1954
288
Sta Elev
1063 294.8
1292 287.6
1454 288
1592 279.46
1705 284
1772 282
2132 290
Sta
Elev
1164
294
1341
288
1491
286
1596
280
1742
282
1784
284
Sta
Elev
Sta
Elev
1183
292
1201
290
1355
290
1377
290.2
1498
284
1506
282
1607
282
1660
284
1744
280
1747
279.8
1789
286
1915
287.3
Manning's n Values
num= 3
Sta n Val Sta n Val Sta n Val
1000 .075 1583 .035 1596 .075
Bank Sta: Left Right Lengths: Left Channel Right
1583 1596 194.38 134.05 123.49
CROSS SECTION RIVER: N.F. Spring Cree
REACH: Reach A RS: 4655.57
INPUT
Description:
Station Elevation Data num= 22
Sta Elev Sta Elev Sta Elev Sta
1000 296 1018 294 1076 292 1114
1157 286 1173 284 1189 282 1218
1236 280 1244 282 1255 284 1324
1434 286.5 1474 286 1485 285.8 1499
1750 288 1883 290
Manning's n Values num= 3
Sta n Val Sta n Val Sta n Val
1000 .075 1218 .035 1236 .075
Bank Sta: Left Right Lengths: Left Channel Right
1218 1236 364.38 343.49 312.53
CROSS SECTION RIVER: N.F. Spring Cree
REACH: Reach A RS: 4313.39
INPUT
Description: Cross
Section from Su
rvey Field Data
Station Elevation
Data
num=
25
Sta
Elev
Sta
Elev
Sta
Elev
1000
297.85
1038
296.53
1099
294.79
1193
290.2
1227
288.58
1274
284.71
1311
281.02
1313
277.46
1320
277.68
1385
282.87
1439
282.07
1465
281.58
1520
285.73
1580
286.39
1622
287.15
Manning's
n Values
num=
3
Sta
n Val
Sta
n Val
Sta
n Val
1000
.075
1311
.035
1322
.075
Bank Sta:
Left R
ight
Lengths:
Left Channel
1311
1322
601
588
CROSS SECTION
RI
VER: N.F.
Spring
Cree
Coeff Contr. Expan.
.1 .3
Elev
Sta
Elev
290
1130
288
280
1229
278.83
285.8
1389
286
286
1668
287
Coeff Contr. Expan.
.1 .3
Sta Elev
1143 292.95
1292 282.68
1322 280.13
1499 284.31
1728 288
Sta Elev
1174 291.1
1305 281.85
1345 282.35
1513 285.12
1855 290
Right Coeff Contr. Expan.
425 .1 .3
Exhibit D
10 of 14
Exhibit D
HEC-RAS Data
REACH: Reach A RS: 3725.17
INPUT
Description: Cross Section from Survey Field Data
Station Elevation
Data
num=
21
Sta
Elev
Sta
Elev
Sta
Elev
812
290
848
288
1000
286.45
1171
283.72
1214
283.78
1217
278.77
1271
279.15
1298
277.86
1314
281.07
1453
277.87
1476
280.02
1514
284.81
1730
290
Manning's
n Values
num=
3
Sta
n Val
Sta
n Val
Sta
n Val
812
.075
1217
.035
1234
.075
Bank Sta:
Left R
ight
Lengths:
Left Ch
annel
1217
1234
350
423
CROSS SECTION
RIVER: N.F.
Spring
Cree
REACH: Reach A
RS: 3302
.88
INPUT
Description: Cross
Section
from Survey Field Data
Station Elevation
Data
num=
12
Sta
Elev
Sta
Elev
Sta
Elev
0
284.27
82
284.6
155
284.72
232
278
242
275
255
275
404
282.7
551
285.7
Manning's
n Values
num=
3
Sta
n Val
Sta
n Val
Sta
n Val
0
.075
232
.035
266
_075
Sta Elev
1079 284.84
1231 276.93
1370 279.34
1557 287.47
Bank Sta: Left Right Lengths: Left Channel Right
232 266 220 210 180
CROSS SECTION RIVER: N.F. Spring Cree
REACH: Reach A RS: 3092.13
INPUT
Description: Cross Section from Survey Field Data
Station Elevation Data num= 20
Coeff Contr. Expan.
.1 .3
Right
Coeff
Contr.
Expan.
360
.1
.3
Sta
Elev
Sta
Elev
164
284
195
279
266
280.56
308
283.17
Sta
Elev
Sta
Elev
Sta
Elev
Sta
Elev
329
288
410
286
508
284
610
282.8
876
282
898
280
926
278
1000
277.81
1079
276.18
1131
275.19
1139
272.78
1151
274.59
1190
282.81
1237
283.29
1298
284.62
1364
286
Manning Is
Sta
329
Bank Sta:
CROSS SEC'
n Values num=
n Val Sta n Val
.075 1131 .035
Left Right Lengths:
1131 1151 3
PION RIVER: N.F.
3
Sta n Val
1151 .075
Left Channel Right
35.36 332.56 361.25
Spring Cree
Sta Elev
1130 284.39
1234 278.94
1418 279.06
1643 288
Sta Elev
785 282.3
1041 277.34
1157 282.68
1460 288
Coeff Contr. Expan.
.1 .3
Exhibit D
11 of 14
Exhibit D
HEC-RAS Data
REACH: Reach A RS: 2759.57
INPUT
Description:
Station Elevation Data num= 21
Sta
Elev
Sta
Elev
Sta
Elev
Sta
Elev
Sta
Elev
515
286
606
284
717
282.8
908
282.3
944
282
1000
280.8
1089
280
1113
278
1132
276
1146
274
1156
272
1164
271.65
1175
272
1182
274
1188
280
1258
280.75
1333
282
1440
283.3
1522
284
1584
284.6
1679
286
Manning's
n Value
s
num=
3
Sta
n Val
Sta
n Val
Sta
n Val
515
.075
1156
.035
1175
.075
Bank Sta:
Left
Right
Lengths:
Left C
hannel
Right
1156
1175
539.93
547.51
483.15
CROSS SECTION
RI
VER: N.F.
Spring
Cree
REACH: Reach A
RS: 2212
.06
INPUT
Description:
Station Elevation
Data
num=
12
Sta
Elev
Sta
Elev
Sta
Elev
Sta
1000
280.5
1046
280
1077
278
1110
1169
272
1187
270.67
1241
272
1247
1284
278
1309
280
Manning's
n Value
s
num=
3
Sta
n Val
Sta
n Val
Sta
n Val
1000
.075
1169
.035
1241
.075
Bank Sta:
Left
Right
Coeff Contr.
Expan.
1169
1241
.1
.3
SUMMARY OF MANNING'S N VALUES
River:N.F. Spring Cree
Reach River Sta.
Reach
A
12650.45
Reach
A
12480.59
Reach
A
12131.56
Reach
A
11754.03
Reach
A
11306.79
Reach
A
10827.35
Reach
A
10458.54
Reach
A
10065.66
Reach
A
9686.47
Reach
A
9076.33
Reach
A
8697.48
Reach
A
8621.46
Coeff Contr. Expan.
.1 .3
Elev Sta
276 1122
274 1279
nl
n2
n3
.075
.035
.075
.075
.035
.075
.075
.035
.075
.075
.035
.075
.075
.035
.075
.075
.035
.075
.075
.035
.075
.075
.035
.075
.075
.035
.075
.075
.035
.075
.075
.035
.075
.075
.035
.075
Elev
274
276
Exhibit D
12 of 14
Exhibit D
HEGRAS Data
Reach
A
7318.65
.075
.035
.075
Reach
A
7070.25
.075
.035
.075
Reach
A
6301.48
.075
.035
.075
Reach
A
5716.37
.075
.035
.075
Reach
A
5391.48
.075
.035
.075
Reach
A
4997.49
.075
.035
.075
Reach
A
4789.43
.075
.035
.075
Reach
A
4655.57
.075
.035
.075
Reach
A
4313.39
.075
.035
.075
Reach
A
3725.17
.075
.035
.075
Reach
A
3302.88
.075
.035
.075
Reach
A
3092.13
.075
.035
.075
Reach
A
2759.57
.075
.035
.075
Reach
A
2212.06
.075
.035
.075
SUMMARY OF REACH LENGTHS
River: N.F. Spring Cree
Reach
River Sta.
Left
Channel
Right
Reach
A
12650.45
168.23
169.86
171.24
Reach
A
12480.59
334.51
349.03
347.07
Reach
A
12131.56
395.32
377.53
368.27
Reach
A
11754.03
454.41
447.24
431.89
Reach
A
11306.79
465.98
479.44
473.4
Reach
A
10827.35
363.31
368.81
369.02
Reach
A
10458.54
389.39
392.88
380.45
Reach
A
10065.66
388.77
379.19
369.65
Reach
A
9686.47
575.24
610.14
584.85
Reach
A
9076.33
372.4
378.85
384.61
Reach
A
8697.48
74.23
76.02
67.72
Reach
A
8621.46
1206.4
1302.81
1243.98
Reach
A
7318.65
255.41
248.4
251.61
Reach
A
7070.25
741.68
768.77
652.7
Reach
A
6301.48
569.1
585.11
544.19
Reach
A
5716.37
285.33
324.89
325.59
Reach
A
5391.48
384.13
393.99
374.89
Reach
A
4997.49
258.49
208.06
205.49
Reach
A
4789.43
194.38
134.05
123.49
Reach
A
4655.57
364.38
343.49
312.53
Reach
A
4313.39
601
588
425
Reach
A
3725.17
350
423
360
Reach
A
3302.88
220
210
180
Reach
A
3092.13
335.36
332.56
361.25
Reach
A
2759.57
539.93
547.51
483.15
Reach
A
2212.06
SUMMARY OF CONTRACTION AND EXPANSION COEFFICIENTS
River: N.F. Spring Cree
Exhibit D
13 of 14
Exhibit D
HEC-RAS Data
Reach
River Sta.
Contr.
Expan.
Reach
A
12650.45
.1
.3
Reach
A
12480.59
.1
.3
Reach
A
12131.56
.1
.3
Reach
A
11754.03
.1
.3
Reach
A
11306.79
.1
.3
Reach
A
10827.35
.1
.3
Reach
A
10458.54
.1
.3
Reach
A
10065.66
.1
.3
Reach
A
9686.47
.1
.3
Reach
A
9076.33
.1
.3
Reach
A
8697.48
.1
.3
Reach
A
8621.46
.1
.3
Reach
A
7318.65
.1
.3
Reach
A
7070.25
.1
.3
Reach
A
6301.48
.1
.3
Reach
A
5716.37
.1
.3
Reach
A
5391.48
.1
.3
Reach
A
4997.49
.1
.3
Reach
A
4789.43
.1
.3
Reach
A
4655.57
.1
.3
Reach
A
4313.39
.1
.3
Reach
A
3725.17
.1
.3
Reach
A
3302.88
.1
.3
Reach
A
3092.13
.1
.3
Reach
A
2759.57
.1
.3
Reach
A
2212.06
.1
.3
Exhibit D
14 of 14
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